Deconvolution of the mercury 253.7 nm spectral line shape for the use in absorption spectroscopy

N. Zorina, G. Revalde, R. Disch
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引用次数: 4

Abstract

In this work we present measurement and results of the deconvolution of the Hg 253.7 nm spectral line shapes, emitted from the mercury isotope high-frequency electrodeless discharge lamps, made at the Institute of Atomic Physics and Spectroscopy for the use in Zeeman Atomic Absorption Spectrometry. The emission line profiles of 254 nm Hg resonance line have been measured by means of a Zeeman scanning spectrometer at the mercury cold spot temperature value at 20 C. Then the deconvolution procedure or solving of this ill-posed inverse problem by means of the Tikhonov's regularization method [1] was performed to obtain the real spectral line shape.
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用于吸收光谱的汞253.7 nm谱线形状的反褶积
在这项工作中,我们介绍了汞同位素高频无电极放电灯发出的汞253.7 nm谱线形状的反卷积测量和结果,该放电灯是在原子物理和光谱学研究所制造的,用于塞曼原子吸收光谱法。用塞曼扫描光谱仪测量了汞冷点温度为20℃时254 nm汞谐振谱线的发射谱线,然后用吉洪诺夫正则化方法[1]对这一不适定逆问题进行反褶积处理或求解,得到了真实的谱线形状。
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